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on high-performance computing (HPC) systems. Closely Collaborate with Clinicians and Wet-Lab Scientists on the experimental design and collect data for computational modelling and analysis. Engage Actively
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programme development in the key areas of software engineering. The duties related to the field of research include the following: 1) high-impact international research 2) preparation of national and
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, including excellent skills in programming and high-performance computing Research experience in a relevant field, e.g. functional genomics, transcriptomics, bioinformatics, bioimage analysis, and/or single
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. In addition, we value experience in successful project work and research collaboration with industry. Proof of and potential in high-impact international publishing and experience in the acquisition
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would perform technically challenging swimming force experiments with tiny living organisms using a micropipette force sensor (see Backholm et al., Nature Protocols 2019 https://doi.org/10.1038/s41596-018
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infrastructure for micro- and nanotechnology Computational infrastructure consisting of the Triton high-performance computing cluster, CSC – IT Center for Science and LUMI supercomputer. Potential
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the candidate can start in autumn 2025. Background Our group develops and applies systems pharmacology strategies to design rational combinatorial therapies for cancer. We combine both computational (dry-lab) and
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research, such as microbiology or virology, molecular or cell biology, or biochemistry Has a high level of written and spoken English and strong communication, social, organisational and time management
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training in the second area are encouraged to highlight this in their application. Experience with high performance computing and GPU acceleration tools (e.g. CUDA) and deep learning frameworks, such as
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programming (such as Python, R, Bash) The candidate is required to have documented research experience with large-scale omics data analysis Experience with high performance computing is a strong advantage